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Closed type reverse electrodialysis generation method based on asymmetric ion exchange membranes and device thereof

A technology of reverse electrodialysis and ion exchange membrane, applied in the field of waste heat power generation, can solve the problems of large water consumption, limited application range, complex structure, etc., and achieve the effects of energy saving, high power generation efficiency, and small concentration polarization

Active Publication Date: 2019-04-12
TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this technology has problems such as complex RED module structure, large water consumption, limited application range, and the need to continuously replenish fresh concentrated and fresh water. Therefore, it is necessary to provide a reverse electrodialysis power generation device and power generation method to solve one of the above problems

Method used

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  • Closed type reverse electrodialysis generation method based on asymmetric ion exchange membranes and device thereof
  • Closed type reverse electrodialysis generation method based on asymmetric ion exchange membranes and device thereof
  • Closed type reverse electrodialysis generation method based on asymmetric ion exchange membranes and device thereof

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preparation example Construction

[0047] In a specific implementation process, the electrode is a carbon nanotube / lithium manganate composite electrode, which can be prepared by the following method:

[0048] First, carbon nanotubes with a length of 30-100 μm and an outer diameter of 10-20 nm are ultrasonically dispersed in N-methyl-2-pyrrolidone (N-Methyl pyrrolidone), and then LiMn 2 o 4 Add it into the CNT dispersion, and filter it after ultrasonic to obtain the carbon nanotube / lithium manganate composite material. Carbon-coated aluminum foil was dried in vacuum to obtain CNT / LMO electrode. This electrode can be used directly without the need for cathode and anode chambers. In the present invention, CNT is the abbreviation of carbon nanotube, NMP is the abbreviation of N-methyl-2-pyrrolidone, and PVDF is the abbreviation of polyvinylidene fluoride.

[0049] In a preferred implementation process, the electrode thickness is 500-600 μm.

[0050] In a specific implementation process, the power generation de...

Embodiment 1

[0070] figure 1 The closed reverse electrodialysis power generation device utilized in the present invention is mainly composed of a reverse electrodialysis module 1, a gas-liquid separation generator 2, a condenser 3, a heat exchanger 4, a peristaltic pump 5, a valve 6, a cation exchange Membrane 7 , anion exchange membrane 8 , electrode 9 , dope pool 10 , and dilute pool 11 .

[0071] The cation exchange membrane in the device is an asymmetric ion exchange membrane made of PES / SPEEK, with a thickness of 34 μm, a large pore diameter of 125 nm, and a small pore diameter of 11 nm; the anion exchange membrane is an asymmetric ion exchange membrane made of PES / SPEEK / PDA. Its thickness is 36 μm, the large pore size is 125 nm, and the small pore size is 7 nm; the electrode is a sheet carbon nanotube / lithium manganate composite electrode with a thickness of 500 μm; the working fluid is a lithium bromide solution, and the concentration of the concentrated lithium bromide solution is ...

Embodiment 2

[0078] Generating device and generating process are exactly the same as embodiment 1, just changed the following parameters in the generating device:

[0079] The cation exchange membrane in the device is an asymmetric ion exchange membrane made of PES / SPEEK, with a thickness of 35 μm, a large pore diameter of 250 nm, and a small pore diameter of 15 nm; the anion exchange membrane is an asymmetric ion exchange membrane made of PES / SPEEK / PDA, and its The thickness is 37.5μm, the large aperture is 250nm, and the small aperture is 12nm; the electrode is a sheet carbon nanotube / lithium manganate composite electrode with a thickness of 550μm; the working fluid is a lithium bromide solution, and the concentration of the concentrated lithium bromide solution is 0.5M. The concentration of the dilute LiBr solution is 0.01 M.

[0080] The results show that when the external resistance is 1000Ω, the output power of the power generation device is 0.025W / m 2 .

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Abstract

The invention provides a closed type reverse electrodialysis generation device based on asymmetric ion exchange membranes. A reverse electrodialysis module of the generation device comprises asymmetric zwitterion exchange membranes in alternative arrangement, the diffusion of the ion is convenient, the thickness of the membrane layer is comparatively small at the same time, so that the membrane resistance is effectively reduced; secondly, by adopting the carbon nano-tube / lithium manganate electrode which is free from combining with the cathode and anode chambers, a salinity gradient generationdevice is simplified; furthermore, the device further performs heat exchange process in the system while utilizing the waste heat, and the energy is saved when the waste heat is converted into the electric energy; the working liquid is recycled in the whole generation process, the consumption of the salt and the water is greatly saved. The generation method based on the generation device has theadvantages of being small in membrane resistance, small in concentration polarization phenomenon, and high in generation efficiency. Numerous problems in the prior art are solved, and the method and device have good application prospect in the salinity gradient generation field.

Description

technical field [0001] The invention relates to the technical field of utilizing waste heat to generate electricity. More specifically, it relates to a closed reverse electrodialysis power generation method and device using waste heat. Background technique [0002] After the second industrial revolution, mankind entered the "Electrical Age". The rapid development of human economic activities has led to an increasing demand for energy. Today, electricity has become an important driving force for social development and one of the indispensable energy sources for production and life. The traditional mainstream power generation methods have disadvantages such as non-renewability, low power generation efficiency, and environmental pollution. The use of fossil fuels to generate electricity leads to climate change, and the depletion of fossil fuels has made human beings face severe energy security issues. Hydropower generation affects the natural environment and living things. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02N3/00
CPCH02N3/00
Inventor 闻利平孙悦赵晓璐孔祥玉江雷
Owner TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI
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